mirror of
https://github.com/Telecominfraproject/OpenCellular.git
synced 2026-01-08 00:21:46 +00:00
Some platforms are unable to access the 900h-9ffh region over LPC and must instead access memmap data through the ACPI CMD / DATA ports. To avoid racing with data updates, disallow changes to multi-byte memmap data while in burst mode. Linux currently enables burst mode when accessing multi-byte data and disables it immediately afterward, though the ACPI spec defines burst mode in a more general way. BUG=chrome-os-partner:38224 TEST=Manual on Samus. Undefine LPC_MEMMAP and modify asl to move memmap data to ERAM at offset 0x20. Verify system boots cleanly and battery status is updated immediately on plug / unplug. BRANCH=None Change-Id: Ib848bdb491fdfece96ad0cee7a44ba85b4a1a50b Signed-off-by: Shawn Nematbakhsh <shawnn@chromium.org> Reviewed-on: https://chromium-review.googlesource.com/262072 Reviewed-by: Randall Spangler <rspangler@chromium.org> Reviewed-by: Duncan Laurie <dlaurie@chromium.org>
685 lines
18 KiB
C
685 lines
18 KiB
C
/* Copyright (c) 2014 The Chromium OS Authors. All rights reserved.
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* Use of this source code is governed by a BSD-style license that can be
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* found in the LICENSE file.
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*/
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/* LPC module for Chrome EC */
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#include "acpi.h"
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#include "clock.h"
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#include "common.h"
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#include "console.h"
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#include "gpio.h"
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#include "hooks.h"
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#include "host_command.h"
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#include "keyboard_protocol.h"
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#include "lpc.h"
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#include "port80.h"
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#include "pwm.h"
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#include "registers.h"
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#include "system.h"
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#include "task.h"
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#include "timer.h"
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#include "uart.h"
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#include "util.h"
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#include "system_chip.h"
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/* Console output macros */
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#define CPUTS(outstr) cputs(CC_LPC, outstr)
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#define CPRINTS(format, args...) cprints(CC_LPC, format, ## args)
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#define LPC_SYSJUMP_TAG 0x4c50 /* "LP" */
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static uint32_t host_events; /* Currently pending SCI/SMI events */
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static uint32_t event_mask[3]; /* Event masks for each type */
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static struct host_packet lpc_packet;
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static struct host_cmd_handler_args host_cmd_args;
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static uint8_t host_cmd_flags; /* Flags from host command */
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static uint8_t shm_mem_host_cmd[256] __aligned(8);
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static uint8_t shm_memmap[256] __aligned(8);
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/* Params must be 32-bit aligned */
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static uint8_t params_copy[EC_LPC_HOST_PACKET_SIZE] __aligned(4);
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static int init_done;
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static uint8_t * const cmd_params = (uint8_t *)shm_mem_host_cmd +
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EC_LPC_ADDR_HOST_PARAM - EC_LPC_ADDR_HOST_ARGS;
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static struct ec_lpc_host_args * const lpc_host_args =
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(struct ec_lpc_host_args *)shm_mem_host_cmd;
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#ifdef CONFIG_KEYBOARD_IRQ_GPIO
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static void keyboard_irq_assert(void)
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{
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/*
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* Enforce signal-high for long enough for the signal to be pulled high
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* by the external pullup resistor. This ensures the host will see the
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* following falling edge, regardless of the line state before this
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* function call.
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*/
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gpio_set_level(CONFIG_KEYBOARD_IRQ_GPIO, 1);
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udelay(4);
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/* Generate a falling edge */
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gpio_set_level(CONFIG_KEYBOARD_IRQ_GPIO, 0);
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udelay(4);
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/* Set signal high, now that we've generated the edge */
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gpio_set_level(CONFIG_KEYBOARD_IRQ_GPIO, 1);
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}
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#else
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static inline void keyboard_irq_assert(void)
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{
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/* Use serirq method. */
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/* Using manual IRQ for KBC */
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SET_BIT(NPCX_HIIRQC, 0); /* set IRQ1B to high */
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CLEAR_BIT(NPCX_HICTRL, 0); /* set IRQ1 control by IRQB1 */
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}
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#endif
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static void lpc_task_enable_irq(void){
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task_enable_irq(NPCX_IRQ_SHM);
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task_enable_irq(NPCX_IRQ_KBC_IBF);
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task_enable_irq(NPCX_IRQ_PM_CHAN_IBF);
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task_enable_irq(NPCX_IRQ_PORT80);
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}
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static void lpc_task_disable_irq(void){
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task_disable_irq(NPCX_IRQ_SHM);
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task_disable_irq(NPCX_IRQ_KBC_IBF);
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task_disable_irq(NPCX_IRQ_PM_CHAN_IBF);
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task_disable_irq(NPCX_IRQ_PORT80);
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}
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/**
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* Generate SMI pulse to the host chipset via GPIO.
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*
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* If the x86 is in S0, SMI# is sampled at 33MHz, so minimum pulse length is
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* 60ns. If the x86 is in S3, SMI# is sampled at 32.768KHz, so we need pulse
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* length >61us. Both are short enough and events are infrequent, so just
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* delay for 65us.
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*/
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static void lpc_generate_smi(void)
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{
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#ifdef CONFIG_SCI_GPIO
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/* Enforce signal-high for long enough to debounce high */
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gpio_set_level(GPIO_PCH_SMI_L, 1);
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udelay(65);
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/* Generate a falling edge */
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gpio_set_level(GPIO_PCH_SMI_L, 0);
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udelay(65);
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/* Set signal high, now that we've generated the edge */
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gpio_set_level(GPIO_PCH_SMI_L, 1);
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#else
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NPCX_HIPMIE(PM_CHAN_1) |= NPCX_HIPMIE_SMIE;
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#endif
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if (host_events & event_mask[LPC_HOST_EVENT_SMI])
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CPRINTS("smi 0x%08x",
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host_events & event_mask[LPC_HOST_EVENT_SMI]);
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}
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/**
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* Generate SCI pulse to the host chipset via LPC0SCI.
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*/
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static void lpc_generate_sci(void)
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{
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#ifdef CONFIG_SCI_GPIO
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/* Enforce signal-high for long enough to debounce high */
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gpio_set_level(CONFIG_SCI_GPIO, 1);
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udelay(65);
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/* Generate a falling edge */
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gpio_set_level(CONFIG_SCI_GPIO, 0);
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udelay(65);
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/* Set signal high, now that we've generated the edge */
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gpio_set_level(CONFIG_SCI_GPIO, 1);
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#else
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SET_BIT(NPCX_HIPMIE(PM_CHAN_1), NPCX_HIPMIE_SCIE);
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#endif
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if (host_events & event_mask[LPC_HOST_EVENT_SCI])
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CPRINTS("sci 0x%08x",
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host_events & event_mask[LPC_HOST_EVENT_SCI]);
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}
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/**
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* Update the level-sensitive wake signal to the AP.
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*
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* @param wake_events Currently asserted wake events
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*/
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static void lpc_update_wake(uint32_t wake_events)
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{
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/*
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* Mask off power button event, since the AP gets that through a
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* separate dedicated GPIO.
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*/
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wake_events &= ~EC_HOST_EVENT_MASK(EC_HOST_EVENT_POWER_BUTTON);
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/* Signal is asserted low when wake events is non-zero */
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gpio_set_level(GPIO_PCH_WAKE_L, !wake_events);
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}
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uint8_t *lpc_get_memmap_range(void)
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{
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return (uint8_t *)shm_memmap;
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}
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static void lpc_send_response(struct host_cmd_handler_args *args)
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{
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uint8_t *out;
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int size = args->response_size;
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int csum;
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int i;
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/* Ignore in-progress on LPC since interface is synchronous anyway */
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if (args->result == EC_RES_IN_PROGRESS)
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return;
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/* Handle negative size */
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if (size < 0) {
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args->result = EC_RES_INVALID_RESPONSE;
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size = 0;
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}
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/* New-style response */
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lpc_host_args->flags =
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(host_cmd_flags & ~EC_HOST_ARGS_FLAG_FROM_HOST) |
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EC_HOST_ARGS_FLAG_TO_HOST;
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lpc_host_args->data_size = size;
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csum = args->command + lpc_host_args->flags +
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lpc_host_args->command_version +
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lpc_host_args->data_size;
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for (i = 0, out = (uint8_t *)args->response; i < size; i++, out++)
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csum += *out;
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lpc_host_args->checksum = (uint8_t)csum;
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/* Fail if response doesn't fit in the param buffer */
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if (size > EC_PROTO2_MAX_PARAM_SIZE)
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args->result = EC_RES_INVALID_RESPONSE;
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/* Write result to the data byte. This sets the TOH status bit. */
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NPCX_HIPMDO(PM_CHAN_2) = args->result;
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/* Clear processing flag */
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CLEAR_BIT(NPCX_HIPMST(PM_CHAN_2), 2);
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}
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static void lpc_send_response_packet(struct host_packet *pkt)
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{
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/* Ignore in-progress on LPC since interface is synchronous anyway */
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if (pkt->driver_result == EC_RES_IN_PROGRESS)
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return;
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/* Write result to the data byte. This sets the TOH status bit. */
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NPCX_HIPMDO(PM_CHAN_2) = pkt->driver_result;
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/* Clear processing flag */
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CLEAR_BIT(NPCX_HIPMST(PM_CHAN_2), 2);
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}
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int lpc_keyboard_has_char(void)
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{
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/* if OBF '1', that mean still have a data in the FIFO */
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return (NPCX_HIKMST&0x01) ? 1 : 0;
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}
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/* Return true if the FRMH is set */
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int lpc_keyboard_input_pending(void)
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{
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return (NPCX_HIKMST&0x02) ? 1 : 0;
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}
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/* Put a char to host buffer and send IRQ if specified. */
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void lpc_keyboard_put_char(uint8_t chr, int send_irq)
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{
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UPDATE_BIT(NPCX_HICTRL, NPCX_HICTRL_OBFKIE, send_irq);
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NPCX_HIKDO = chr;
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task_enable_irq(NPCX_IRQ_KBC_OBF);
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}
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void lpc_keyboard_clear_buffer(void)
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{
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/* Make sure the previous TOH and IRQ has been sent out. */
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udelay(4);
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/*FW_OBF write 1*/
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NPCX_HICTRL |= 0x80;
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/* Ensure there is no TOH set in this period. */
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udelay(4);
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}
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void lpc_keyboard_resume_irq(void)
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{
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if (lpc_keyboard_has_char())
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keyboard_irq_assert();
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}
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/**
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* Update the host event status.
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*
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* Sends a pulse if masked event status becomes non-zero:
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* - SMI pulse via EC_SMI_L GPIO
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* - SCI pulse via LPC0SCI
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*/
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static void update_host_event_status(void)
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{
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int need_sci = 0;
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int need_smi = 0;
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if (!init_done)
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return;
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/* Disable LPC interrupt while updating status register */
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lpc_task_disable_irq();
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if (host_events & event_mask[LPC_HOST_EVENT_SMI]) {
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/* Only generate SMI for first event */
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if (!(NPCX_HIPMIE(PM_CHAN_1) & NPCX_HIPMIE_SMIE))
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need_smi = 1;
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SET_BIT(NPCX_HIPMIE(PM_CHAN_1), NPCX_HIPMIE_SMIE);
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} else
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CLEAR_BIT(NPCX_HIPMIE(PM_CHAN_1), NPCX_HIPMIE_SMIE);
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if (host_events & event_mask[LPC_HOST_EVENT_SCI]) {
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/* Generate SCI for every event */
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need_sci = 1;
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SET_BIT(NPCX_HIPMIE(PM_CHAN_1), NPCX_HIPMIE_SCIE);
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} else
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CLEAR_BIT(NPCX_HIPMIE(PM_CHAN_1), NPCX_HIPMIE_SCIE);
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/* Copy host events to mapped memory */
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*(uint32_t *)host_get_memmap(EC_MEMMAP_HOST_EVENTS) = host_events;
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lpc_task_enable_irq();
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/* Process the wake events. */
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lpc_update_wake(host_events & event_mask[LPC_HOST_EVENT_WAKE]);
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/* Send pulse on SMI signal if needed */
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if (need_smi)
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lpc_generate_smi();
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/* ACPI 5.0-12.6.1: Generate SCI for SCI_EVT=1. */
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if (need_sci)
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lpc_generate_sci();
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}
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void lpc_set_host_event_state(uint32_t mask)
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{
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if (mask != host_events) {
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host_events = mask;
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update_host_event_status();
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}
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}
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int lpc_query_host_event_state(void)
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{
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const uint32_t any_mask = event_mask[0] | event_mask[1] | event_mask[2];
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int evt_index = 0;
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int i;
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for (i = 0; i < 32; i++) {
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const uint32_t e = (1 << i);
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if (host_events & e) {
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host_clear_events(e);
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/*
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* If host hasn't unmasked this event, drop it. We do
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* this at query time rather than event generation time
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* so that the host has a chance to unmask events
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* before they're dropped by a query.
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*/
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if (!(e & any_mask))
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continue;
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evt_index = i + 1; /* Events are 1-based */
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break;
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}
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}
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return evt_index;
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}
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void lpc_set_host_event_mask(enum lpc_host_event_type type, uint32_t mask)
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{
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event_mask[type] = mask;
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update_host_event_status();
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}
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uint32_t lpc_get_host_event_mask(enum lpc_host_event_type type)
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{
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return event_mask[type];
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}
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void lpc_set_acpi_status_mask(uint8_t mask)
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{
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/* TODO (crbug.com/p/38224): Implement */
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}
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void lpc_clear_acpi_status_mask(uint8_t mask)
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{
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/* TODO (crbug.com/p/38224): Implement */
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}
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int lpc_get_pltrst_asserted(void)
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{
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/* Read PLTRST status*/
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return (NPCX_MSWCTL1 & 0x04) ? 0 : 1;
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}
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/**
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* Handle write to ACPI I/O port
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*
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* @param is_cmd Is write command (is_cmd=1) or data (is_cmd=0)
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*/
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static void handle_acpi_write(int is_cmd)
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{
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uint8_t value, result;
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/* Read command/data; this clears the FRMH status bit. */
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value = NPCX_HIPMDI(PM_CHAN_1);
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/* Handle whatever this was. */
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if (acpi_ap_to_ec(is_cmd, value, &result))
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NPCX_HIPMDO(PM_CHAN_1) = result;
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/*
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* ACPI 5.0-12.6.1: Generate SCI for Input Buffer Empty / Output Buffer
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* Full condition on the kernel channel.
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*/
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lpc_generate_sci();
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}
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/**
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* Handle write to host command I/O ports.
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*
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* @param is_cmd Is write command (1) or data (0)?
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*/
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static void handle_host_write(int is_cmd)
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{
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/*
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* Read the command byte. This clears the FRMH bit in
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* the status byte.
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*/
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host_cmd_args.command = NPCX_HIPMDI(PM_CHAN_2);
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host_cmd_args.result = EC_RES_SUCCESS;
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host_cmd_args.send_response = lpc_send_response;
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host_cmd_flags = lpc_host_args->flags;
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/* See if we have an old or new style command */
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if (host_cmd_args.command == EC_COMMAND_PROTOCOL_3) {
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lpc_packet.send_response = lpc_send_response_packet;
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lpc_packet.request = (const void *)shm_mem_host_cmd;
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lpc_packet.request_temp = params_copy;
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lpc_packet.request_max = sizeof(params_copy);
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/* Don't know the request size so pass in the entire buffer */
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lpc_packet.request_size = EC_LPC_HOST_PACKET_SIZE;
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lpc_packet.response = (void *)shm_mem_host_cmd;
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lpc_packet.response_max = EC_LPC_HOST_PACKET_SIZE;
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lpc_packet.response_size = 0;
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lpc_packet.driver_result = EC_RES_SUCCESS;
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/* Set processing flag */
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SET_BIT(NPCX_HIPMST(PM_CHAN_2), 2);
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host_packet_receive(&lpc_packet);
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return;
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} else if (host_cmd_flags & EC_HOST_ARGS_FLAG_FROM_HOST) {
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/* Version 2 (link) style command */
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int size = lpc_host_args->data_size;
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int csum, i;
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host_cmd_args.version = lpc_host_args->command_version;
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host_cmd_args.params = params_copy;
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host_cmd_args.params_size = size;
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host_cmd_args.response = cmd_params;
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host_cmd_args.response_max = EC_PROTO2_MAX_PARAM_SIZE;
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host_cmd_args.response_size = 0;
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/* Verify params size */
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if (size > EC_PROTO2_MAX_PARAM_SIZE) {
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host_cmd_args.result = EC_RES_INVALID_PARAM;
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} else {
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const uint8_t *src = cmd_params;
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uint8_t *copy = params_copy;
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/*
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* Verify checksum and copy params out of LPC space.
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* This ensures the data acted on by the host command
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* handler can't be changed by host writes after the
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* checksum is verified.
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*/
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csum = host_cmd_args.command +
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host_cmd_flags +
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host_cmd_args.version +
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host_cmd_args.params_size;
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for (i = 0; i < size; i++) {
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csum += *src;
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*(copy++) = *(src++);
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}
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if ((uint8_t)csum != lpc_host_args->checksum)
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host_cmd_args.result = EC_RES_INVALID_CHECKSUM;
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}
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} else {
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/* Old style command, now unsupported */
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host_cmd_args.result = EC_RES_INVALID_COMMAND;
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}
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/* Hand off to host command handler */
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host_command_received(&host_cmd_args);
|
|
}
|
|
|
|
|
|
void lpc_shm_interrupt(void){
|
|
}
|
|
DECLARE_IRQ(NPCX_IRQ_SHM, lpc_shm_interrupt, 2);
|
|
|
|
void lpc_kbc_ibf_interrupt(void)
|
|
{
|
|
#ifdef CONFIG_KEYBOARD_PROTOCOL_8042
|
|
/* If "command" input 0, else 1*/
|
|
keyboard_host_write(NPCX_HIKMDI, (NPCX_HIKMST & 0x08) ? 1 : 0);
|
|
#endif
|
|
}
|
|
DECLARE_IRQ(NPCX_IRQ_KBC_IBF, lpc_kbc_ibf_interrupt, 2);
|
|
|
|
void lpc_kbc_obf_interrupt(void){
|
|
/* reserve for future handle */
|
|
if (!IS_BIT_SET(NPCX_HICTRL, 0)) {
|
|
SET_BIT(NPCX_HICTRL, 0); /* back to H/W control of IRQ1 */
|
|
CLEAR_BIT(NPCX_HIIRQC, 0); /* back to default of IRQB1 */
|
|
}
|
|
task_disable_irq(NPCX_IRQ_KBC_OBF);
|
|
}
|
|
DECLARE_IRQ(NPCX_IRQ_KBC_OBF, lpc_kbc_obf_interrupt, 2);
|
|
|
|
void lpc_pmc_ibf_interrupt(void){
|
|
/* Channel-1 for ACPI usage*/
|
|
/* Channel-2 for Host Command usage , so the argument data had been
|
|
* put on the share memory firstly*/
|
|
if (NPCX_HIPMST(PM_CHAN_1) & 0x02)
|
|
handle_acpi_write((NPCX_HIPMST(PM_CHAN_1)&0x08) ? 1 : 0);
|
|
else if (NPCX_HIPMST(PM_CHAN_2)&0x02)
|
|
handle_host_write((NPCX_HIPMST(PM_CHAN_2)&0x08) ? 1 : 0);
|
|
}
|
|
DECLARE_IRQ(NPCX_IRQ_PM_CHAN_IBF, lpc_pmc_ibf_interrupt, 2);
|
|
|
|
void lpc_pmc_obf_interrupt(void){
|
|
}
|
|
DECLARE_IRQ(NPCX_IRQ_PM_CHAN_OBF, lpc_pmc_obf_interrupt, 2);
|
|
|
|
void lpc_port80_interrupt(void){
|
|
port_80_write((NPCX_GLUE_SDPD0<<0) | (NPCX_GLUE_SDPD1<<8));
|
|
/* No matter what , just clear error status bit */
|
|
SET_BIT(NPCX_DP80STS, 7);
|
|
SET_BIT(NPCX_DP80STS, 5);
|
|
}
|
|
DECLARE_IRQ(NPCX_IRQ_PORT80, lpc_port80_interrupt, 2);
|
|
|
|
/**
|
|
* Preserve event masks across a sysjump.
|
|
*/
|
|
static void lpc_sysjump(void)
|
|
{
|
|
system_add_jump_tag(LPC_SYSJUMP_TAG, 1,
|
|
sizeof(event_mask), event_mask);
|
|
}
|
|
DECLARE_HOOK(HOOK_SYSJUMP, lpc_sysjump, HOOK_PRIO_DEFAULT);
|
|
|
|
/**
|
|
* Restore event masks after a sysjump.
|
|
*/
|
|
static void lpc_post_sysjump(void)
|
|
{
|
|
const uint32_t *prev_mask;
|
|
int size, version;
|
|
|
|
prev_mask = (const uint32_t *)system_get_jump_tag(LPC_SYSJUMP_TAG,
|
|
&version, &size);
|
|
if (!prev_mask || version != 1 || size != sizeof(event_mask))
|
|
return;
|
|
|
|
memcpy(event_mask, prev_mask, sizeof(event_mask));
|
|
}
|
|
|
|
static void lpc_init(void)
|
|
{
|
|
/* Enable clock for LPC peripheral */
|
|
clock_enable_peripheral(CGC_OFFSET_LPC, CGC_LPC_MASK,
|
|
CGC_MODE_RUN | CGC_MODE_SLEEP);
|
|
/* Switching to LPC interface */
|
|
NPCX_DEVCNT |= 0x04;
|
|
/* Enable 4E/4F */
|
|
if (!IS_BIT_SET(NPCX_MSWCTL1, 3)) {
|
|
NPCX_HCBAL = 0x4E;
|
|
NPCX_HCBAH = 0x0;
|
|
}
|
|
/* Clear Host Access Hold state */
|
|
NPCX_SMC_CTL = 0xC0;
|
|
|
|
/* Initialize Hardware for UART Host */
|
|
#if CONFIG_UART_HOST
|
|
/* Init COMx LPC UART */
|
|
/* FMCLK have to using 50MHz */
|
|
NPCX_DEVALT(0xB) = 0xFF;
|
|
/* Make sure Host Access unlock */
|
|
CLEAR_BIT(NPCX_LKSIOHA, 2);
|
|
/* Clear Host Access Lock Violation */
|
|
SET_BIT(NPCX_SIOLV, 2);
|
|
#endif
|
|
|
|
/* Don't stall SHM transactions */
|
|
NPCX_SHM_CTL = NPCX_SHM_CTL & ~0x40;
|
|
/* Semaphore and Indirect access disable */
|
|
NPCX_SHCFG = 0xE0;
|
|
/* Disable Protect Win1&2*/
|
|
NPCX_WIN_WR_PROT(0) = 0;
|
|
NPCX_WIN_WR_PROT(1) = 0;
|
|
NPCX_WIN_RD_PROT(0) = 0;
|
|
NPCX_WIN_RD_PROT(1) = 0;
|
|
/* Open Win1 256 byte for Host CMD, Win2 256 for MEMMAP*/
|
|
NPCX_WIN_SIZE = 0x88;
|
|
NPCX_WIN_BASE(0) = (uint32_t)shm_mem_host_cmd;
|
|
NPCX_WIN_BASE(1) = (uint32_t)shm_memmap;
|
|
/* Write protect of Share memory */
|
|
NPCX_WIN_WR_PROT(1) = 0xFF;
|
|
|
|
/* Turn on PMC2 for Host Command usage */
|
|
SET_BIT(NPCX_HIPMCTL(PM_CHAN_2), 0);
|
|
SET_BIT(NPCX_HIPMCTL(PM_CHAN_2), 1);
|
|
/* enable PMC2 IRQ */
|
|
SET_BIT(NPCX_HIPMIE(PM_CHAN_2), 0);
|
|
/* IRQ control from HW */
|
|
SET_BIT(NPCX_HIPMIE(PM_CHAN_2), 3);
|
|
/*
|
|
* Set required control value (avoid setting HOSTWAIT bit at this stage)
|
|
*/
|
|
NPCX_SMC_CTL = NPCX_SMC_CTL&~0x7F;
|
|
/* Clear status */
|
|
NPCX_SMC_STS = NPCX_SMC_STS;
|
|
/* Create mailbox */
|
|
|
|
/*
|
|
* Init KBC
|
|
* Clear OBF status, PM1 IBF/OBF INT enable, IRQ11 enable,
|
|
* IBF(K&M) INT enable, OBF(K&M) empty INT enable ,
|
|
* OBF Mouse Full INT enable and OBF KB Full INT enable
|
|
*/
|
|
NPCX_HICTRL = 0xFF;
|
|
/* Normally Polarity IRQ1,12,11 type (level + high) setting */
|
|
NPCX_HIIRQC = 0x00; /* Make sure to default */
|
|
|
|
/*
|
|
* Init PORT80
|
|
* Enable Port80, Enable Port80 function & Interrupt & Read auto
|
|
*/
|
|
NPCX_DP80CTL = 0x29;
|
|
SET_BIT(NPCX_GLUE_SDP_CTS, 3);
|
|
SET_BIT(NPCX_GLUE_SDP_CTS, 0);
|
|
/* Just turn on IRQE */
|
|
NPCX_HIPMIE(PM_CHAN_1) = 0x01;
|
|
lpc_task_enable_irq();
|
|
|
|
/* Initialize host args and memory map to all zero */
|
|
memset(lpc_host_args, 0, sizeof(*lpc_host_args));
|
|
memset(lpc_get_memmap_range(), 0, EC_MEMMAP_SIZE);
|
|
|
|
/* We support LPC args and version 3 protocol */
|
|
*(lpc_get_memmap_range() + EC_MEMMAP_HOST_CMD_FLAGS) =
|
|
EC_HOST_CMD_FLAG_LPC_ARGS_SUPPORTED |
|
|
EC_HOST_CMD_FLAG_VERSION_3;
|
|
|
|
|
|
|
|
/* Restore event masks if needed */
|
|
lpc_post_sysjump();
|
|
|
|
/* Sufficiently initialized */
|
|
init_done = 1;
|
|
|
|
/* Update host events now that we can copy them to memmap */
|
|
|
|
update_host_event_status();
|
|
|
|
/* initial IO port address via SIB-write modules */
|
|
system_lpc_host_register_init();
|
|
}
|
|
/*
|
|
* Set prio to higher than default; this way LPC memory mapped data is ready
|
|
* before other inits try to initialize their memmap data.
|
|
*/
|
|
DECLARE_HOOK(HOOK_INIT, lpc_init, HOOK_PRIO_INIT_LPC);
|
|
|
|
static void lpc_resume(void)
|
|
{
|
|
/* Mask all host events until the host unmasks them itself. */
|
|
lpc_set_host_event_mask(LPC_HOST_EVENT_SMI, 0);
|
|
lpc_set_host_event_mask(LPC_HOST_EVENT_SCI, 0);
|
|
lpc_set_host_event_mask(LPC_HOST_EVENT_WAKE, 0);
|
|
|
|
/* Store port 80 event so we know where resume happened */
|
|
port_80_write(PORT_80_EVENT_RESUME);
|
|
}
|
|
DECLARE_HOOK(HOOK_CHIPSET_RESUME, lpc_resume, HOOK_PRIO_DEFAULT);
|
|
|
|
/* Get protocol information */
|
|
static int lpc_get_protocol_info(struct host_cmd_handler_args *args)
|
|
{
|
|
struct ec_response_get_protocol_info *r = args->response;
|
|
|
|
memset(r, 0, sizeof(*r));
|
|
r->protocol_versions = (1 << 2) | (1 << 3);
|
|
r->max_request_packet_size = EC_LPC_HOST_PACKET_SIZE;
|
|
r->max_response_packet_size = EC_LPC_HOST_PACKET_SIZE;
|
|
r->flags = 0;
|
|
|
|
args->response_size = sizeof(*r);
|
|
|
|
return EC_SUCCESS;
|
|
}
|
|
DECLARE_HOST_COMMAND(EC_CMD_GET_PROTOCOL_INFO,
|
|
lpc_get_protocol_info,
|
|
EC_VER_MASK(0));
|